TY - JOUR
T1 - Synergistic corrosion mechanisms of supercritical water and Na2SO4 deposition layer
T2 - Austenitic stainless steels 316 L and 304
AU - Feng, Peng
AU - Xu, Donghai
AU - Yin, Gang
AU - Song, Kunkun
AU - Wang, Ruibo
AU - Li, Zhiyuan
AU - Wang, Pan
N1 - Publisher Copyright:
© 2025 Elsevier B.V.
PY - 2025/10
Y1 - 2025/10
N2 - This study investigated the corrosion behavior of 316 L (316LSS) and 304 (304SS) stainless steels under a Na2SO4 deposition layer in supercritical water (SCW). The salt layer reduced oxide film densification versus pure SCW, with 304SS exhibiting more severe corrosion (e.g., pitting) due to the absence of Mo which resists pitting corrosion. Without the salt layer, oxide film thicknesses were 6.50 µm (316LSS) and 1.60 µm (304SS); in contrast, 6.52 µm and 9.33 µm, respectively, indicating thicker in SCW with the salt layer. At 723 K and 25 MPa, higher water density increased Ni/Fe ion solubilities, while the salt layer trapped these ions in the microenvironment between the layer and oxide film, generating a locally acidic and oxidizing environment via hydrolysis of Ni/Fe ions. This process accelerated metal ion leaching and oxide dissolution, further enhanced in the presence of SO42-. Na2SO4 deposition layer and SCW synergistically intensified corrosion in both alloys.
AB - This study investigated the corrosion behavior of 316 L (316LSS) and 304 (304SS) stainless steels under a Na2SO4 deposition layer in supercritical water (SCW). The salt layer reduced oxide film densification versus pure SCW, with 304SS exhibiting more severe corrosion (e.g., pitting) due to the absence of Mo which resists pitting corrosion. Without the salt layer, oxide film thicknesses were 6.50 µm (316LSS) and 1.60 µm (304SS); in contrast, 6.52 µm and 9.33 µm, respectively, indicating thicker in SCW with the salt layer. At 723 K and 25 MPa, higher water density increased Ni/Fe ion solubilities, while the salt layer trapped these ions in the microenvironment between the layer and oxide film, generating a locally acidic and oxidizing environment via hydrolysis of Ni/Fe ions. This process accelerated metal ion leaching and oxide dissolution, further enhanced in the presence of SO42-. Na2SO4 deposition layer and SCW synergistically intensified corrosion in both alloys.
KW - 304SS
KW - 316LSS
KW - Corrosion
KW - NaSO deposition layer
KW - Supercritical water
UR - https://www.scopus.com/pages/publications/105005518439
U2 - 10.1016/j.supflu.2025.106663
DO - 10.1016/j.supflu.2025.106663
M3 - 文章
AN - SCOPUS:105005518439
SN - 0896-8446
VL - 224
JO - Journal of Supercritical Fluids
JF - Journal of Supercritical Fluids
M1 - 106663
ER -